EA-based ASV Trajectory Planner for Detecting Cyanobacterial Blooms in Freshwater

Author:

Carazo-Barbero Gonzalo1ORCID,Besada-Portas Eva1ORCID,Risco-Martín José Luis1ORCID,López-Orozco José Antonio1ORCID

Affiliation:

1. Universidad Complutense de Madrid, Madrid, Spain

Funder

Synergic program of the Comunidad Autónoma de Madrid

MCIN/AEI/10.13039/501100011033 and the European Union NextGenerationEU/PRTR

Knowledge Generation program of the Spanish Ministry of Science and Innovation

Universidad Complutense of Madrid and Banco Santander

Publisher

ACM

Reference34 articles.

1. E. Aparicio-Medrano. 2014. Physical aspects explaining cyanobacteria scum formation in natural systems. Ph. D. Dissertation. Eindhoven. E. Aparicio-Medrano. 2014. Physical aspects explaining cyanobacteria scum formation in natural systems. Ph. D. Dissertation. Eindhoven.

2. An evolutionary approach to constrained path planning of an autonomous surface vehicle for maximizing the covered area of Ypacarai Lake

3. M. Arzamendia , D. Gregor , D. G. Reina , S. L. Toral , and R. Gregor . 2016. Evolutionary Path Planning of an Autonomous Surface Vehicle for Water Quality Monitoring . In Int. Conf. on Developments in e-Systems Engineering. M. Arzamendia, D. Gregor, D. G. Reina, S. L. Toral, and R. Gregor. 2016. Evolutionary Path Planning of an Autonomous Surface Vehicle for Water Quality Monitoring. In Int. Conf. on Developments in e-Systems Engineering.

4. J. Bader , K. Deb , and E. Zitzler . 2008 . Faster Hypervolume-Based Search Using Monte Carlo Sampling. In International Conference on Multiple Criteria Decision Making. J. Bader, K. Deb, and E. Zitzler. 2008. Faster Hypervolume-Based Search Using Monte Carlo Sampling. In International Conference on Multiple Criteria Decision Making.

5. On the performance comparison of multi-objective evolutionary UAV path planners

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